Nova Patents
US8540701B2

Hair treatment system

Summary by NHIP

Proximity-controlled hair removal

The method positions a handheld light source near skin and activates it only when a proximity sensor confirms a distance between 25 μm and 300 μm. This generates a convergent beam with a waist diameter of 25 to 300 μm and an angle of convergence between 25 and 70 degrees.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Embodiments of methods and systems for hair treatment are disclosed. According to various embodiments, light is used to shave, trim, or otherwise modify hair shafts.

US8540701B2, drawing sheet 1
Sheet 1 of 21

Term

Projected expiry 15 November 2030.

  1. Priority and filed
  2. Granted
  3. Today
  4. Projected expiry

15 claims: 4 independent, 11 dependent

  1. 1
    Broadest claimClaim Score 62, broad(NHIP)A hair removal method comprising:a) manually positioning a handheld device containing a light source adjacent to a skin surface;b) detecting or determining a distance of said light source from the skin surface with a proximity sensor in said handheld device;and c) if said determined distance is within a specified range, activating said light source responsive to said detecting or determining a distance of said light source from the skin surface with a proximity sensor in said handheld device to generate a highly convergent beam of a frequency band significantly absorbed by hair and having a narrow, spatially limited beam waist located at a selected distance above the skin surface, wherein said selected distance is between about 25μm and about 300 μm.
  2. 7
    A hair removal method comprising:a) manually positioning a handheld device containing a light source adjacent to a skin surface;b) detecting or determining a distance of said light source from the skin surface with a proximity sensor in said handheld device;and if said determined distance is within a specified range, activating said light source responsive to said detecting or determining a distance of said light source from the skin surface with a proximity sensor in said handheld device to generate a highly convergent beam of a frequency band significantly absorbed by hair and having a narrow, spatially limited beam waist located at a selected distance above the skin surface, wherein the light fluence at said beam waist is between about 4 and about 100 times the light fluence at said skin surface.
  3. 12
    A hair removal method comprising:a) manually positioning a handheld device containing a light source adjacent to a skin surface;b) detecting or determining a distance of a portion of said handheld device from the skin surface with a proximity sensor in said handheld device;and c) if said determined distance is within a specified range, activating said light source responsive to said detecting or determining a distance of said portion of said handheld device from the skin surface with a proximity sensor in said handheld device to generate a highly convergent beam of a frequency band significantly absorbed by hair and having a narrow, spatially limited beam waist located at a selected distance above the skin surface, wherein the light fluence at said beam waist is between about 4 and about 100 times the light fluence at said skin surface.
  4. 13
    A hair removal method comprising:a) manually positioning a handheld device containing a light source adjacent to a skin surface;b) detecting or determining a distance of a portion of said handheld device from the skin surface with a proximity sensor in said handheld device;and if said determined distance is within a specified range, activating said light source responsive to said detecting or determining a distance of said portion of said handheld device from the skin surface with a proximity sensor in said handheld device to generate a highly convergent beam of a frequency band significantly absorbed by hair and having a narrow, spatially limited beam waist located at a selected distance above the skin surface, wherein said selected distance is between about 25μm and about 300μm.